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Recruitment of mitochondrial uncoupling protein UCP2 after lipopolysaccharide induction
Michal Růzicka1, Eva Skobisová, Andrea Dlasková
1Department of Membrane Transport Biophysics, No. 75 Institute of Physiology, Academy of Sciences of the Czech Republic, Vídenská 1083, 14220 Prague 4, Czech Republic.
Abstract:
Rat liver mitochondria contain a negligible amount of mitochondrial uncoupling protein UCP2 as indicated by 3H-GTP binding. UCP2 recruitment in hepatocytes during infection may serve to decrease mitochondrial production of reactive oxygen species (ROS), and this, in turn, would counterbalance the increased oxidative stress. To characterize in detail UCP2 recruitment in hepatocytes, we studied rats pretreated with lipopolysaccharide (LPS) or hepatocytes isolated from them, as an in vitro model for the systemic response to bacterial infection. LPS injection resulted in 3.3- or 3-fold increase of UCP2 mRNA in rat liver and hepatocytes, respectively, as detected by real-time RT-PCR on a LightCycler. A concomitant increase in UCP2 protein content was indicated either by Western blots or was quantified by up to three-fold increase in the number of 3H-GTP binding sites in mitochondria of LPS-stimulated rats. Moreover, H2O2 production was increased by GDP only in mitochondria of LPS-stimulated rats with or without fatty acids and carboxyatractyloside. When monitored by JC1 fluorescent probe in situ mitochondria of hepatocytes from LPS-stimulated rats exhibited lower membrane potential than mitochondria of unstimulated rats. We have demonstrated that the lower membrane potential does not result from apoptosis initiation. However, due to a small extent of potential decrease upon UCP2 recruitment, justified also by theoretical calculations, we conclude that the recruited UCP2 causes only a weak uncoupling which is able to decrease mitochondrial ROS production but not produce enough heat for thermogenesis participating in a febrile response.
Insights
Mitochondrial uncoupling protein 2 (UCP2) is recruited in rat liver cells during infection, reducing reactive oxygen species (ROS) production. This UCP2 recruitment weakly uncouples mitochondria, decreasing oxidative stress without significant heat generation.
Area of Science:
- Mitochondrial physiology
- Cellular stress response
Background:
- Mitochondrial uncoupling protein 2 (UCP2) plays a role in cellular defense mechanisms.
- Infection can increase oxidative stress, potentially involving UCP2 in hepatocytes.
Purpose of the Study:
- To investigate the recruitment and function of UCP2 in rat hepatocytes during a lipopolysaccharide (LPS)-induced inflammatory response.
- To determine the impact of UCP2 on mitochondrial function and reactive oxygen species (ROS) production.
Main Methods:
- Lipopolysaccharide (LPS) administration to rats and isolation of hepatocytes.
- Real-time RT-PCR for UCP2 mRNA quantification.
- Western blotting and 3H-GTP binding assays for UCP2 protein assessment.
- Measurement of hydrogen peroxide (H2O2) production and mitochondrial membrane potential (using JC1 probe).
Main Results:
- LPS treatment significantly increased UCP2 mRNA and protein levels in rat liver and hepatocytes.
- Mitochondria from LPS-stimulated rats showed increased H2O2 production inhibited by GDP.
- LPS-stimulated hepatocytes exhibited lower mitochondrial membrane potential, not linked to apoptosis.
- Theoretical calculations supported a weak uncoupling effect of UCP2.
Conclusions:
- UCP2 is recruited to rat liver mitochondria during LPS-induced inflammation.
- Recruited UCP2 reduces mitochondrial ROS production but does not significantly contribute to thermogenesis.
- UCP2's primary role in this context is mitigating oxidative stress rather than generating heat for fever.
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